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Homepage>BS Standards>33 TELECOMMUNICATIONS. AUDIO AND VIDEO ENGINEERING>33.120 Components and accessories for telecommunications equipment>33.120.01 Components and accessories in general>BS EN IEC 61726:2022 Cable assemblies, cables, connectors and passive microwave component — Screening attenuation measurement by the reverberation chamber method
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BS EN IEC 61726:2022 Cable assemblies, cables, connectors and passive microwave component — Screening attenuation measurement by the reverberation chamber method

BS EN IEC 61726:2022

Cable assemblies, cables, connectors and passive microwave component — Screening attenuation measurement by the reverberation chamber method

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Standard number:BS EN IEC 61726:2022
Pages:26
Released:2022-10-31
ISBN:978 0 539 18016 9
Status:Standard
BS EN IEC 61726:2022 - Cable Assemblies, Cables, Connectors and Passive Microwave Component

BS EN IEC 61726:2022 - Cable Assemblies, Cables, Connectors and Passive Microwave Component

Standard Number: BS EN IEC 61726:2022

Pages: 26

Released: 2022-10-31

ISBN: 978 0 539 18016 9

Status: Standard

Overview

The BS EN IEC 61726:2022 standard is a comprehensive guide for the measurement of screening attenuation in cable assemblies, cables, connectors, and passive microwave components using the reverberation chamber method. This standard is essential for professionals in the field of electrical and electronic engineering, providing a reliable and standardized method to ensure the quality and performance of these critical components.

Key Features

  • Standardized Measurement Method: The reverberation chamber method is a well-established technique for measuring screening attenuation, ensuring consistent and accurate results.
  • Comprehensive Coverage: This standard covers a wide range of components, including cable assemblies, cables, connectors, and passive microwave components, making it a versatile resource for various applications.
  • Detailed Guidelines: The standard provides detailed guidelines and procedures for conducting measurements, ensuring that users can achieve reliable and repeatable results.
  • Up-to-Date Information: Released on 2022-10-31, this standard reflects the latest advancements and best practices in the field, ensuring that users have access to the most current information.

Benefits

Implementing the BS EN IEC 61726:2022 standard offers numerous benefits, including:

  • Improved Quality Control: By following the standardized measurement method, manufacturers can ensure the quality and performance of their products, leading to increased customer satisfaction.
  • Enhanced Reliability: The detailed guidelines and procedures help users achieve consistent and reliable results, reducing the risk of errors and improving overall reliability.
  • Compliance with Industry Standards: Adhering to this standard ensures compliance with industry regulations and standards, which is crucial for maintaining a competitive edge in the market.
  • Cost Savings: By using a standardized method, companies can reduce the need for costly rework and testing, leading to significant cost savings over time.

Applications

The BS EN IEC 61726:2022 standard is applicable to a wide range of industries and applications, including:

  • Telecommunications: Ensuring the quality and performance of cables and connectors used in telecommunications systems.
  • Automotive: Testing and verifying the performance of cable assemblies and connectors used in automotive electronics.
  • Aerospace: Ensuring the reliability and performance of passive microwave components used in aerospace applications.
  • Consumer Electronics: Verifying the quality and performance of cables and connectors used in consumer electronic devices.

Why Choose BS EN IEC 61726:2022?

Choosing the BS EN IEC 61726:2022 standard offers several advantages:

  • Expertly Developed: This standard has been developed by experts in the field, ensuring that it meets the highest standards of quality and reliability.
  • Comprehensive and Detailed: With 26 pages of detailed guidelines and procedures, this standard provides all the information needed to conduct accurate and reliable measurements.
  • Up-to-Date: Released in 2022, this standard reflects the latest advancements and best practices in the field, ensuring that users have access to the most current information.
  • Versatile: Applicable to a wide range of components and industries, this standard is a valuable resource for professionals in various fields.

Conclusion

The BS EN IEC 61726:2022 standard is an essential resource for professionals in the field of electrical and electronic engineering. By providing a standardized method for measuring screening attenuation in cable assemblies, cables, connectors, and passive microwave components, this standard ensures consistent and reliable results, improved quality control, and compliance with industry standards. Whether you are working in telecommunications, automotive, aerospace, or consumer electronics, the BS EN IEC 61726:2022 standard is a valuable tool for ensuring the quality and performance of your products.

DESCRIPTION

BS EN IEC 61726:2022


This standard BS EN IEC 61726:2022 Cable assemblies, cables, connectors and passive microwave component — Screening attenuation measurement by the reverberation chamber method is classified in these ICS categories:
  • 33.120.01 Components and accessories in general
  • 33.120.30 RF connectors
  • 33.120.10 Coaxial cables. Waveguides
This standard describes the measurement of screening attenuation by the reverberation chamber measurement method, also called mode stirred chamber method. This standard is applicable to screening attenuation measurements of cable assemblies, cables, connectors, and passive microwave components, such as waveguides, phase shifters, diplexers/multiplexers, power dividers/combiners and etc. Modern electronic equipments have shown a demand for methods for testing screening attenuation performance of microwave components over their whole frequency range. Convenient measurement methods have existed for lower frequencies and components of regular shape. These measurement methods are described in IEC 62153 series standards. For much higher frequencies and for components of irregular shape, the reverberation chamber method should be used. Theoretically, the reverberation chamber method has no upper limit of the measurement frequency, but it is limited by the quality and sensitivity of the measurement system, and the lower limit of the measurement frequency is restricted by the size of the reverberation chamber.